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利用梯度变异系数进行活体白细胞检测。

Intravital leukocyte detection using the gradient inverse coefficient of variation.

作者信息

Dong Gang, Ray Nilanjan, Acton Scott T

机构信息

Department of Electrical and Computer Engineering, University of Virginia, Charlottesville, VA 22904, USA.

出版信息

IEEE Trans Med Imaging. 2005 Jul;24(7):910-24. doi: 10.1109/tmi.2005.846856.

Abstract

The problem of identifying and counting rolling leukocytes within intravital microscopy is of both theoretical and practical interest. Currently, methods exist for tracking rolling leukocytes in vivo, but these methods rely on manual detection of the cells. In this paper we propose a technique for accurately detecting rolling leukocytes based on Bayesian classification. The classification depends on a feature score, the gradient inverse coefficient of variation (GICOV), which serves to discriminate rolling leukocytes from a cluttered environment. The leukocyte detection process consists of three sequential steps: the first step utilizes an ellipse matching algorithm to coarsely identify the leukocytes by finding the ellipses with a locally maximal GICOV. In the second step, starting from each of the ellipses found in the first step, a B-spline snake is evolved to refine the leukocytes boundaries by maximizing the associated GICOV score. The third and final step retains only the extracted contours that have a GICOV score above the analytically determined threshold. Experimental results using 327 rolling leukocytes were compared to those of human experts and currently used methods. The proposed GICOV method achieves 78.6% leukocyte detection accuracy with 13.1% false alarm rate.

摘要

在活体显微镜检查中识别和计数滚动白细胞的问题具有理论和实际意义。目前,存在用于在体内跟踪滚动白细胞的方法,但这些方法依赖于细胞的手动检测。在本文中,我们提出了一种基于贝叶斯分类的准确检测滚动白细胞的技术。该分类依赖于一个特征分数,即梯度反变异系数(GICOV),它用于在杂乱环境中区分滚动白细胞。白细胞检测过程包括三个连续步骤:第一步利用椭圆匹配算法,通过找到具有局部最大GICOV的椭圆来粗略识别白细胞。在第二步中,从第一步中找到的每个椭圆开始,通过最大化相关的GICOV分数来演化B样条蛇以细化白细胞边界。第三步也是最后一步仅保留具有高于分析确定阈值的GICOV分数的提取轮廓。使用327个滚动白细胞的实验结果与人类专家和当前使用的方法的结果进行了比较。所提出的GICOV方法实现了78.6%的白细胞检测准确率和13.1%的误报率。

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